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A Model-driven Approach for Software Product Lines Requirements Engineering., , , , , , и . SEKE, стр. 779-784. Knowledge Systems Institute Graduate School, (2008)Leveraging natural-language requirements for deriving better acceptance criteria from models., , , , , и . MoDELS, стр. 218-228. ACM, (2020)Towards Industry 4.0: Gap Analysis between Current Automotive MES and Industry Standards Using Model-Based Requirement Engineering., , , , , , и . ICSA Workshops, стр. 29-35. IEEE Computer Society, (2017)Supporting Consistency Checking between Features and Software Product Line Use Scenarios., , , , и . ICSR, том 6727 из Lecture Notes in Computer Science, стр. 20-35. Springer, (2011)Conceiving the model-driven smart factory., , , и . ICSSP, стр. 72-76. ACM, (2015)ViViD: a variability-based tool for synthesizing video sequences., , , , и . SPLC Workshops, стр. 143-147. ACM, (2014)Multi-view Composition Language for Software Product Line Requirements., , , , , , и . SLE, том 5969 из Lecture Notes in Computer Science, стр. 103-122. Springer, (2009)Benchmarking Stability of Aspect-Oriented Product-Line Decompositions., , , , , , , , , и 3 other автор(ы). SPLC Workshops, стр. 21-26. Lancaster University, (2010)On systematically building a controlled natural language for functional requirements., , , , и . Empir. Softw. Eng., 26 (4): 79 (2021)Generating Requirements Analysis Models from Textual Requirements., , , , , и . MARK@RE, стр. 32-41. IEEE Computer Society, (2008)